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Optical source with mode reshaping 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01S-003/10
출원번호 US-0389706 (1995-02-14)
발명자 / 주소
  • Bischel William K. (Menlo Park CA) Deacon David A. G. (Los Altos CA) Brinkman Michael J. (Redwood City CA)
출원인 / 주소
  • Deacon Research (Palo Alto CA 02)
인용정보 피인용 횟수 : 79  인용 특허 : 0

초록

A laser cavity configuration employs a mode reshaping structure in a solid state waveguide. The mode reshaping may be by means of an adiabatic taper. Polarization switching may be employed in connection with the mode reshaping to obtain a high output power in a single transverse spatial mode from an

대표청구항

An optical source comprising: a first optical reflector; at least a second optical reflector aligned with said first optical reflector to define a resonating structure; an optically active medium means for supporting multiple transverse modes, said optically active medium means disposed in said reso

이 특허를 인용한 특허 (79)

  1. Alalusi, Mazin; Mols, Peter; Stolpner, Lew, Achieving low phase noise in external cavity laser implemented using planar lightwave circuit technology.
  2. Delavaux Jean-Marc Pierre, Adiabatic waveguide amplifier.
  3. DeMars Scott D. ; Lang Robert J. ; Schoenfelder Alexander, Angled distributed reflector optical device with enhanced light confinement.
  4. Bendett, Mark P., Apparatus and method for integrated photonic devices having high-performance waveguides and multicompositional substrates.
  5. Opower Hans,DEX ; Becker Uwe,DEX ; Brauch Uwe,DEX, Apparatus for producing an image.
  6. Bakhti Fatima,FRX ; Riant Isabelle,FRX ; Sansonetti Pierre,FRX, Band-pass filter in an optical waveguide.
  7. O'Brien Stephen ; Schoenfelder Alexander ; Lang Robert J. ; Hardy Amos A.,ILX ; Parke Ross A. ; Welch David F., Differentially patterned pumped optical semiconductor gain media.
  8. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D., Electro-optic beam deflector device.
  9. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D., Electro-optic beam deflector device.
  10. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D., Electro-optic beam deflector device.
  11. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D., Electro-optic beam deflector device having adjustable in-plane beam control.
  12. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D., Electro-optic beam deflector device having adjustable in-plane beam control.
  13. Opower, Hans, Exposure apparatus.
  14. Jett?,St?phanie Marie Julie; Berini,Pierre Simon Joseph, External-cavity lasers.
  15. Anthon Douglas W., Fiber grating feedback stabilization of broad area laser diode.
  16. Kondo, Jungo; Yamaguchi, Shoichiro; Asai, Keiichiro; Ejiri, Tetsuya; Okada, Naotake, Grating element and external resonator type light emitting device.
  17. Song,Ki Bong; Kim,Jeong Yong; Park,Kang Ho, Head for recording and reading optical data and method of manufacturing the same.
  18. Sanders Steven ; Lang Robert J. ; Waarts Robert G., High power pumped MID-IR wavelength devices using nonlinear frequency mixing (NFM).
  19. Sanders Steven ; Lang Robert J. ; Waarts Robert G., High power pumped mid-IR wavelength systems using nonlinear frequency mixing (NFM) devices.
  20. Duncan, Roger Glen; Childers, Brooks A.; Couch, Philip Robin, Incoherent reflectometry utilizing chaotic excitation of light sources.
  21. Barbier,Denis; Benech,Pierre, Integrated-optics coupling component, designed to adapt a light source to a guided optics element and power laser comprising same.
  22. Devaux, Fabrice; Vergnol, Eric, Large surface amplifier with multimode interferometer.
  23. Jeon Heonsu ; Verdiell Jean-Marc, Laser diode device having a substantially circular light output beam and a method of forming a tapered section in a semiconductor device to provide for a reproducible mode profile of the output beam.
  24. Kikuchi Hiroki,JPX, Laser light emitting device, laser beacon device and laser imager display device.
  25. Simon Ulrich,DEX, Laser resonator design with improved signal-to-noise level (S/N) at the output of a single-mode fiber-coupled multi-wave.
  26. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Liquid crystal waveguide for dynamically controlling polarized light.
  27. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Liquid crystal waveguide having electric field orientated for controlling light.
  28. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Liquid crystal waveguide having refractive shapes for dynamically controlling light.
  29. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Liquid crystal waveguide having refractive shapes for dynamically controlling light.
  30. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Liquid crystal waveguide having refractive shapes for dynamically controlling light.
  31. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Liquid crystal waveguide having two or more control voltages for controlling polarized light.
  32. Han Dong-Kyoon,KRX ; Kim Hyoun-Soo,KRX, Low loss AWG demultiplexer with flat spectral response.
  33. Mohatt Dennis J. ; Melikechi Noureddine ; Tamosaitis Robert S., Method and apparatus for optimizing the output of a harmonic generator.
  34. Jones,Richard, Method and apparatus providing an output coupler for an optical beam.
  35. Jones,Richard, Method and apparatus providing an output coupler for an optical beam.
  36. Jones,Richard, Method and apparatus providing an output coupler for an optical beam.
  37. Arbore, Mark A.; Myers, Lawrence E., Method for tuning nonlinear frequency mixing devices through degeneracy.
  38. Jeon Heonsu ; Verdiell Jean-Marc, Method of forming a tapered section in a semiconductor device to provide for reproducible mode profile of the output beam.
  39. Galvanauskas, Almantas; Harter, Donald J.; Fermann, Martin E.; Raksi, Ferenc, Microchip-Yb fiber hybrid optical amplifier for micro-machining and marking.
  40. Fermann, Martin E., Mode-locked multi-mode fiber laser pulse source.
  41. Fermann, Martin E., Mode-locked multi-mode fiber laser pulse source.
  42. Demiguel,Stephane; Giraudet,Louis; Achouche,Mohand, Monolithic optical component.
  43. Fermann, Martin E.; Harter, Donald J., Multi-mode fiber amplifier.
  44. Fermann, Martin E.; Harter, Donald J., Multi-mode fiber amplifier.
  45. Fermann, Martin E.; Harter, Donald J., Multi-mode fiber amplifier.
  46. Harter, Donald J.; Fermann, Martin E., Multimode amplifier for amplifying single mode light.
  47. Simon,Jonathan; Corzine,Scott, Optical communication devices, light emission devices and optical communication methods.
  48. Ito Hiromasa,JPX, Optical device.
  49. Peng, Chubing, Optical spatial mode filter for removing fundamental mode components in a HAMR light path.
  50. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D.; Farca, George; Johnson, Seth Trevor, Optical time delay control device.
  51. Sugama, Akio; Kato, Masayuki; Ishii, Masatoshi; Sasaki, Shinya; Aoki, Tsuyoshi, Optical wiring substrate, method of manufacturing optical wiring substrate and multilayer optical wiring.
  52. John T. Gallo, Photonic local oscillator signal generator and method for generating a local oscillator signal.
  53. Prassas, Michel; Zenteno, Luis A., Planar laser.
  54. Opower, Hans; Juenger, Klaus, Processing system.
  55. Sutter, Dirk; Killi, Alexander; Kleinbauer, Jochen; Li, Yufeng, Pump radiation arrangement and method for pumping a laser-active medium.
  56. Bendett, Mark P.; Sanford, Norman A.; Veasey, David L., Rare-earth doped phosphate-glass lasers and associated methods.
  57. Chenausky Peter, Retangular discharge gas laser.
  58. Taira, Takunori; Yahia, Vincent, Selective amplifier.
  59. Bowler Dennis P., Semiconductor laser with kink suppression layer.
  60. Dennis P. Bowler, Semiconductor laser with kink suppression layer.
  61. Kuksenkov, Dmitri V.; Minelly, John D.; Zenteno, Luis A., Semiconductor or solid-state laser having an external fiber cavity.
  62. Ishino, Masato, Single wavelength laser module.
  63. Fermann Martin E. ; Harter Donald J., Single-mode amplifiers and compressors based on multi-mode fibers.
  64. Chenausky Peter, Slice laser.
  65. Richard Scheps, Solid state modulated ultraviolet laser.
  66. Essaian, Stepan; Shchegrov, Andrei, Solid-state laser arrays using nonlinear frequency conversion in periodically poled materials.
  67. Glenn H. Rankin, System and method for suppressing multimoding behavior of lasers.
  68. Gregory, Ian Stephen, THz investigation apparatus and method.
  69. Espindola Rolando Patricio ; Stentz Andrew John ; Wagener Jefferson Lynn, Tapered optical fiber grating devices with variable index coatings for modifying guide properties of the fundamental mode.
  70. Lee, Shing; Deacon, David A. G., Thermally wavelength tunable laser having selectively activated gratings.
  71. Anderson, Michael H.; Rommel, Scott D.; Davis, Scott R., Thermo-optic liquid crystal waveguides.
  72. Berini,Pierre Simon Joseph; Gagnon,Guy Philippe; Jett챕,St챕phanie Marie Julie, Thermo-optic plasmon-polariton devices.
  73. Huber, Robert Alexander, Tunable laser.
  74. Anderson, Michael H.; Davis, Scott R.; Rommel, Scott D., Tunable laser having liquid crystal waveguide.
  75. Tayebati, Parviz; Chann, Bien, Two-dimensional multi-beam stabilizer and combining systems and methods.
  76. Vodrahalli, Nagesh K.; Bhowmik, Achintya K.; Liu, Connie C.; Fujiyama, Takaharu; Takahashi, Kenji; Sur, Biswajit, Ultra-thin polarization mode converters based on liquid crystal materials.
  77. Vodrahalli,Nagesh K.; Bhowmik,Achintya K.; Liu,Connie C.; Fujiyama,Takaharu; Takahashi,Kenji; Sur,Biswajit, Ultra-thin polarization mode converters based on liquid crystal materials.
  78. Kitaoka, Yasuo; Mizuuchi, Kiminori; Yamamoto, Kazuhisa, Wavelength-variable semiconductor laser, optical integrated device utilizing the same, and production method thereof.
  79. Kitaoka, Yasuo; Mizuuchi, Kiminori; Yamamoto, Kazuhisa, Wavelength-variable semiconductor laser, optical integrated device utilizing the same, and production method thereof.
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